黄铜悬臂梁式质量测量应变计传感器

H. D. Ayu, A. Jufriadi, K. B. Pranata, E. Endarko, M. S. Muntini
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引用次数: 0

摘要

对放置在黄铜悬臂角部的120应变片进行了质量测量研究。本研究主要利用地表的偏转现象。这种现象的发生是由于放置在黄铜悬臂一端的质量。质量用标准质量计校准,使用OHAUS PA214 Pioneer TM分析天平。在1.1-7.5克的跨度区间内,在黄铜悬臂的末端进行了质量减少和增加的变化,增加了0.1克的倍数。得到了应变片电阻(ΔR)随系统最大载荷范围(7,1-7,5 g)质量变化的迟滞曲线图。此外,系统对IC AD521JD差分放大器输出电压质量变化的测试近似为二次函数,用系统特征方程m = 2,4×V 2 - 0,8533×V + 1,1449表示,其中m(克)和V(伏)。该特性方程用于单片机的ADC转换。测量的质量值以克为单位显示在2 × 16液晶显示器上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strain Gauge Sensor of Mass Measurement Using a Brass Cantilever
A study of mass measurement using strain gauge 120 which was placed in the corner of the brass cantilever has been done. This study essentially utilizes deflection phenomena on the surface. This phenomenon occurs due to the mass placed on one end of the brass cantilever. The Mass was calibrated with standard mass gauge using OHAUS PA214 Pioneer TM analytical balance. It was done a variation of mass-reduction and addition at the end of the brass cantilever with a multiple of 0.1 gram over a span interval of 1.1-7.5 grams. It obtained hysteresis curve plot for the changing strain gauge resistance (ΔR) versus mass variations on which the system has the maximum load range (7,1-7,5 gram). Moreover,  The test of the system for the mass variations in the output voltage of the IC AD521JD differential amplifier was approximated as a quadratic function which was expressed in the system characteristic equation m = 2,4×V 2 - 0,8533×V + 1,1449, with m (gram) and V (Volt). The characteristic equation is used in the ADC conversion of the microcontroller. The measured mass value was displayed on 2 × 16 LCDs in grams.
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